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Original Articles

Normal and fractional kink pairs in dissociated dislocations

Pages 1033-1048 | Received 31 May 2001, Accepted 07 Sep 2001, Published online: 04 Aug 2009

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Read on this site (5)

He Wei & Yang Xiang. (2009) A generalized Peierls–Nabarro model for kinked dislocations. Philosophical Magazine 89:27, pages 2333-2354.
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G. Schoeck. (2006) Modelling the Bordoni peak† . Philosophical Magazine 86:25-26, pages 3819-3834.
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Mao Wen, Alfonso H. W. Ngan, Seiji Fukuyama & Kiyoshi Yokogawa . (2005) Full-scale atomistic simulations of dislocations in Ni crystal by embedded-atom method. Philosophical Magazine 85:17, pages 1917-1929.
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Gunther Schoeck & Maciej Krystian. (2005) The peierls energy and kink energy in fcc metals. Philosophical Magazine 85:9, pages 949-966.
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T. E. Mitchell, P. M. Anderson, M. I. Baskes, S. P. Chen, R. G. Hoagland & A. Misra. (2003) Nucleation of kink pairs on partial dislocations: A new model for solution hardening and softening. Philosophical Magazine 83:11, pages 1329-1346.
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Articles from other publishers (4)

Yongjun Huo, Jiaqi Wu & Chin C. Lee. (2018) Solid solution softening and enhanced ductility in concentrated FCC silver solid solution alloys. Materials Science and Engineering: A 729, pages 208-218.
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Gunther Schoeck. (2009) The Bordoni relaxation revisited. Materials Science and Engineering: A 521-522, pages 24-29.
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Gunther Schoeck. (2005) The Peierls model: Progress and limitations. Materials Science and Engineering: A 400-401, pages 7-17.
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P. Szelestey, M. Patriarca & K. Kaski. (2005) Dissociated dislocations in Ni: a computational study. Materials Science and Engineering: A 390:1-2, pages 393-399.
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